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1.
基于现场试验,采用Abaqus有限元软件对等截面桩及变截面桩单桩竖向承载力测试实验过程进行数值模拟。结果表明:弹性变形阶段,竖向荷载-沉降曲线呈线性变化趋势,等截面桩比变截面桩桩身沉降较小;塑性屈服阶段,等截面桩与变截面桩单桩承载力几乎一致。变截面位置对桩侧摩阻力沿深度的分布有一定影响,最大侧摩阻力位置根据变截面的位置而变化。变截面桩的平均侧摩阻力较等截面桩的平均侧摩阻力大,变截面桩侧摩阻力效果较等截面桩更有优势。在相同承载力条件下,变截面桩所耗费的材料较等截面少,对于竖向承载特性,变截面桩与等截面桩表现基本一致,因此使用变截面桩能节约工程成本。 相似文献
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3.
Min Ma Wan-Chang Sun Ya-Ru Dong Ya-Gang Zhang Yu-Wan Liu Sha-Sha Tian Yan Xiao 《工业材料与腐蚀》2021,72(5):912-924
Diamond-like carbon (DLC) possesses brilliant and excellent properties, including excellent corrosion resistance as well as outstanding wear resistance. Ni and B co-doped DLC films were deposited on AZ91D magnesium alloy by electrodeposition under mild conditions (300 V and 25°C). Uniform and dense morphology of co-doped DLC films were observed, and Ni and B were uniformly incorporated into the carbon-based films. Among all the electrodeposits, the appearance of D and G peaks near 1330 and 1570 cm−1 revealed that the as-deposited films were typical DLC films. As the addition of Ni was increased to 0.05 g, the highest microindentation hardness, the lowest friction coefficient, and wear loss were achieved to be 164.5 HV, 0.3, and 0.6 × 10−5 kg/m, respectively. The amorphous carbon films fabricated at 0.05 g Ni had the lowest corrosion current density and the most positive corrosion potential, which was mainly due to the small and dense granular structure effectively hindering the penetration of corrosion media. 相似文献
4.
Ultra-high molecular weight polyethylene (UHMWPE) is extensively used in frictional applications due to its advanced wear resistance. This advanced polymer is reinforced with hard particulate fillers for further developments against wear conditions. Since elevated temperatures prevail in the service conditions, wear behavior of UHMWPE composites is an important issue for the engineering applications. In the present work, UHMWPE-based composites including silicon carbide (SiC) fillers were fabricated in a compression molding chamber. In the specimen preparation stage, molding pressure, filler amount, and filler particle size were varied to investigate the influence of these variables. Upon deciding the optimum parameters from the wear tests conducted at room temperature, the wear experiments were repeated for the optimum specimen at elevated temperatures, such as 40 and 60°C. According to the results, the wear behavior of the SiC/UHMWPE composites is heavily changed by the effect of elevated temperature. Adhesive effect is pronounced at elevated temperatures while the wear characteristics possess the abrasive effect in the sliding path. In addition, the composites exhibit an accelerated material loss as temperature increases during the frictional system. 相似文献
5.
In this work, a novel graphene oxide (GO)-fly ash cenospheres (FACs) hybrid fillers was introduced to improve the wear and corrosive resistance of epoxy resin (ER) composite coatings. The tribological behavior and the corrosion performance of three kinds of coatings (pure ER, GO/ER and GO-FACs/ER coatings) were studied and the reinforced mechanisms of coatings filled by different fillers were analyzed. The friction coefficient and wear rate of the ER coatings were decreased with the addition of GO-FACs hybrids. The scanning electron microscope images showed that the dispersibility and compatibility of GO-FACs hybrids were effectively improved compared with that of GO sheet. The water contact angle examination indicated that the hydrophobicity of the GO-FACs/ER coatings increased. The electrochemical impedance spectroscopy (EIS) results demonstrated that the GO-FACs/ER coatings have better anticorrosion performance compared with the pure ER coatings and the GO/ER coatings. The hydrophobic surface and the well dispersed fillers constitute the dual barrier to resist the corrosion medium. 相似文献
6.
采用ABAQUS软件对牵引绳用调控式往复密封装置在高压环境下的密封性能进行有限元分析,获得密封组件与牵引绳的应力分布及变形情况,分析调控压力与介质压力对密封泄漏率及摩擦力的影响规律。设计搭建主密封试验装置并进行试验验证。结果表明:采用合理的调控压力与密封结构设计可以实现较好的接触应力分布,显著地减少密封泄漏;随着调控压力的增加,密封泄漏率先迅速下降,而后缓慢下降并逐渐趋于稳定,当调控压力大于介质压力的1.3倍时,泄漏率接近于0;增加调控压力导致摩擦力呈现先缓后急的增长趋势;介质压力对密封环具有开启作用,能够降低流体膜压力而减小摩擦力;工程应用中,维持调控压力比介质压力高出0.2~0.5 MPa时密封效果最好。 相似文献
7.
《中国有色金属学会会刊》2021,31(9):2651-2663
In order to determine the effect of heat treatment on the mechanical and wear properties of Zn–40Al– 2Cu–2Si alloy, different heat treatments including homogenization followed by air-cooling (H1), homogenization followed by furnace-cooling (H2), stabilization (T5) and quench–aging (T6 and T7) were applied. The effects of these heat treatments on the mechanical and tribological properties of the alloy were studied by metallography and, mechanical and wear tests in comparison with SAE 65 bronze. The wear tests were performed using a block on cylinder type test apparatus. The hardness, tensile strength and compressive strength of the alloy increase by the application of H1 and T6 heat treatments, and all the heat treatments except T6, increase its elongation to fracture. H1, T5 and T6 heat treatments cause a reduction in friction coefficient and wear volume of the alloy. However, this alloy exhibits the lowest friction coefficient and wear volume after T6 heat treatment. Therefore, T6 heat treatment appears to be the best process for the lubricated tribological applications of this alloy at a pressure of 14 MPa. However, Zn–40Al–2Cu–2Si alloy in the as-cast and heat-treated conditions shows lower wear loss or higher wear resistance than the bronze. 相似文献
8.
针对湿式离合器摩擦副的结构特点,研究离合器摩擦副表面粗糙接触情况,改进平均流量模型,建立修正的雷诺方程用于计算滑摩过程中油膜压力和油膜厚度的变化规律。采用Greenwood-Tripp接触模型,建立摩擦副摩擦热方程,模拟湿式摩擦副在滑摩过程中油膜厚度、相对滑摩转速、接合油压以及摩擦转矩变化规律,对摩擦副滑摩过程中微凸体和油膜剪切作用产生的摩擦热进行分析,得到它们径向呈线性和抛物线的分布规律,讨论接合油压和相对滑摩转速对微凸体和油膜剪切作用产生摩擦热的影响,并通过钢片的温度场实验对模拟结果加以验证。研究表明:接合油压越大,单位时间内微凸体和油膜剪切作用产生的摩擦热越大,单位时间产生摩擦热峰值的时间越提前;相对转速差越大,微凸体在滑摩过程中单位时间产生的摩擦热越大,油膜则与之相反,且相对转速的变化对单位时间产生摩擦热峰值的时间无影响。 相似文献
9.
在实际镀膜过程中,镀膜腔室内不可避免地会含有微米级的颗粒、灰尘,除此之外,衬底表面在加工过程中产生的缺陷、污染,即使经过清洗处理,往往也不能完全消除,甚至会带来新的缺陷、污染.阴极靶中的杂质、气泡以及微弧放电同样会产生颗粒物,这些因素将直接导致薄膜在生长过程形成缺陷.详细综述了薄膜缺陷的形成原因、分类以及对不同应用的影响.根据形成原因、微观形貌等,可将缺陷大致分为薄片形结构、凹坑结构、结节状球形滴锥结构、针孔/气孔结构等四种类型.不同类型缺陷在薄膜中的占比受环境因素变化而改变,在空间分布也有所不同.缺陷破坏了薄膜的完整性,对薄膜性能产生较大影响,如降低了硬质薄膜的耐摩擦性,腐蚀介质可通过缺陷达到基材表面,导致耐腐蚀薄膜丧失保护功能.对于超导薄膜,当缺陷尺寸远大于copper电子对相干长度时,剩余电阻大大增加.最后,总结了气压、偏压、电压、沉积时间、衬底安装角度、镀膜室屏蔽结构等对缺陷密度的影响,也说明通过优化以上参数与结构可以降低缺陷密度,改善薄膜质量. 相似文献
10.
对3种不同共聚结构的聚对苯二甲酰己二胺(PA6T)树脂——聚对苯二甲酰己二胺/己内酰胺(1132)、聚对苯二甲酰己二胺/己二酰己二胺(M21)和聚对苯二甲酰己二胺/己二酰己二胺(1252)以及其聚四氟乙烯(PTFE)复合材料在干摩擦条件下的摩擦磨损性能进行了研究,并使用扫描电子显微镜(SEM)对试样的磨损面进行了分析。结果表明,1252的摩擦磨损性能最好,M21次之,1132最差;PTFE的加入提高了3种树脂的摩擦磨损性能,其中对1252的摩擦磨损性能改善最大,当PTFE含量为30份(质量份,下同)时,其摩擦因数和磨损率分别降低到了0.16和1.00×10-6;磨损机理方面,1132的磨损方式主要表现为粘着磨损和疲劳磨损,而M21和1252的主要磨损方式表现为磨粒磨损;随着PTFE含量的增加,复合材料的主要磨损方式均转变为粘着磨损。 相似文献